Cargando…

Deficient DNASE1L3 facilitates neutrophil extracellular traps‐induced invasion via cyclic GMP‐AMP synthase and the non‐canonical NF‐κB pathway in diabetic hepatocellular carcinoma

OBJECTIVE: Diabetic hepatocellular carcinoma (HCC) patients have high mortality and metastasis rates. Diabetic conditions promote neutrophil extracellular traps (NETs) generation, which mediates HCC metastasis and invasion. However, whether and how diabetes‐induced NETs trigger HCC invasion is large...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Na, Zheng, Xue, Chen, Mianrong, Huang, Li, Chen, Li, Huo, Rui, Li, Xiaotong, Huang, Yucan, Sun, Mingwen, Mai, Suiqing, Wu, Zhuoyi, Zhang, Hui, Liu, Jinbao, Yang, Chun‐tao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9021716/
https://www.ncbi.nlm.nih.gov/pubmed/35474906
http://dx.doi.org/10.1002/cti2.1386
_version_ 1784689893529616384
author Li, Na
Zheng, Xue
Chen, Mianrong
Huang, Li
Chen, Li
Huo, Rui
Li, Xiaotong
Huang, Yucan
Sun, Mingwen
Mai, Suiqing
Wu, Zhuoyi
Zhang, Hui
Liu, Jinbao
Yang, Chun‐tao
author_facet Li, Na
Zheng, Xue
Chen, Mianrong
Huang, Li
Chen, Li
Huo, Rui
Li, Xiaotong
Huang, Yucan
Sun, Mingwen
Mai, Suiqing
Wu, Zhuoyi
Zhang, Hui
Liu, Jinbao
Yang, Chun‐tao
author_sort Li, Na
collection PubMed
description OBJECTIVE: Diabetic hepatocellular carcinoma (HCC) patients have high mortality and metastasis rates. Diabetic conditions promote neutrophil extracellular traps (NETs) generation, which mediates HCC metastasis and invasion. However, whether and how diabetes‐induced NETs trigger HCC invasion is largely unknown. Here, we aimed to observe the effects of diabetes‐induced NETs on HCC invasion and investigate mechanisms relevant to a DNA sensor cyclic GMP‐AMP synthase (cGAS). METHODS: Serum from diabetic patients and healthy individuals was collected. Human neutrophil‐derived NETs were isolated for stimulating HCC cell invasion. Data from the SEER and TCGA databases were used for bioinformatics analysis. In HCC cells and allograft models, NETs‐triggered invasion was observed. RESULTS: Diabetic HCC patients had poorer survival than non‐diabetic ones. Either diabetic serum or extracted NETs caused HCC invasion. Induction of diabetes or NETosis elicited HCC allograft invasion in nude mice. HCC cell invasion was attenuated by the treatment with DNase1. In TCGA_LIHC, an extracellular DNase DNASE1L3 was downregulated in tumor tissues, while function terms (the endocytic vesicle membrane, the NF‐κB pathway and extracellular matrix disassembly) were enriched. DNASE1L3 knockdown in LO2 hepatocytes or H22 cell‐derived allografts facilitated HCC invasion in NETotic or diabetic nude mice. Moreover, exposure of HCC cells to NETs upregulated cGAS and the non‐canonical NF‐κB pathway and induced expression of metastasis genes (MMP9 and SPP1). Both cGAS inhibitor and NF‐κB RELB knockdown diminished HCC invasion caused by NETs DNA. Also, cGAS inhibitor was able to retard translocation of NF‐κB RELB. CONCLUSION: Defective DNASE1L3 aggravates NETs DNA‐triggered HCC invasion on diabetic conditions via cGAS and the non‐canonical NF‐κB pathway.
format Online
Article
Text
id pubmed-9021716
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-90217162022-04-25 Deficient DNASE1L3 facilitates neutrophil extracellular traps‐induced invasion via cyclic GMP‐AMP synthase and the non‐canonical NF‐κB pathway in diabetic hepatocellular carcinoma Li, Na Zheng, Xue Chen, Mianrong Huang, Li Chen, Li Huo, Rui Li, Xiaotong Huang, Yucan Sun, Mingwen Mai, Suiqing Wu, Zhuoyi Zhang, Hui Liu, Jinbao Yang, Chun‐tao Clin Transl Immunology Original Articles OBJECTIVE: Diabetic hepatocellular carcinoma (HCC) patients have high mortality and metastasis rates. Diabetic conditions promote neutrophil extracellular traps (NETs) generation, which mediates HCC metastasis and invasion. However, whether and how diabetes‐induced NETs trigger HCC invasion is largely unknown. Here, we aimed to observe the effects of diabetes‐induced NETs on HCC invasion and investigate mechanisms relevant to a DNA sensor cyclic GMP‐AMP synthase (cGAS). METHODS: Serum from diabetic patients and healthy individuals was collected. Human neutrophil‐derived NETs were isolated for stimulating HCC cell invasion. Data from the SEER and TCGA databases were used for bioinformatics analysis. In HCC cells and allograft models, NETs‐triggered invasion was observed. RESULTS: Diabetic HCC patients had poorer survival than non‐diabetic ones. Either diabetic serum or extracted NETs caused HCC invasion. Induction of diabetes or NETosis elicited HCC allograft invasion in nude mice. HCC cell invasion was attenuated by the treatment with DNase1. In TCGA_LIHC, an extracellular DNase DNASE1L3 was downregulated in tumor tissues, while function terms (the endocytic vesicle membrane, the NF‐κB pathway and extracellular matrix disassembly) were enriched. DNASE1L3 knockdown in LO2 hepatocytes or H22 cell‐derived allografts facilitated HCC invasion in NETotic or diabetic nude mice. Moreover, exposure of HCC cells to NETs upregulated cGAS and the non‐canonical NF‐κB pathway and induced expression of metastasis genes (MMP9 and SPP1). Both cGAS inhibitor and NF‐κB RELB knockdown diminished HCC invasion caused by NETs DNA. Also, cGAS inhibitor was able to retard translocation of NF‐κB RELB. CONCLUSION: Defective DNASE1L3 aggravates NETs DNA‐triggered HCC invasion on diabetic conditions via cGAS and the non‐canonical NF‐κB pathway. John Wiley and Sons Inc. 2022-04-20 /pmc/articles/PMC9021716/ /pubmed/35474906 http://dx.doi.org/10.1002/cti2.1386 Text en © 2022 The Authors. Clinical & Translational Immunology published by John Wiley & Sons Australia, Ltd on behalf of Australian and New Zealand Society for Immunology, Inc. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Original Articles
Li, Na
Zheng, Xue
Chen, Mianrong
Huang, Li
Chen, Li
Huo, Rui
Li, Xiaotong
Huang, Yucan
Sun, Mingwen
Mai, Suiqing
Wu, Zhuoyi
Zhang, Hui
Liu, Jinbao
Yang, Chun‐tao
Deficient DNASE1L3 facilitates neutrophil extracellular traps‐induced invasion via cyclic GMP‐AMP synthase and the non‐canonical NF‐κB pathway in diabetic hepatocellular carcinoma
title Deficient DNASE1L3 facilitates neutrophil extracellular traps‐induced invasion via cyclic GMP‐AMP synthase and the non‐canonical NF‐κB pathway in diabetic hepatocellular carcinoma
title_full Deficient DNASE1L3 facilitates neutrophil extracellular traps‐induced invasion via cyclic GMP‐AMP synthase and the non‐canonical NF‐κB pathway in diabetic hepatocellular carcinoma
title_fullStr Deficient DNASE1L3 facilitates neutrophil extracellular traps‐induced invasion via cyclic GMP‐AMP synthase and the non‐canonical NF‐κB pathway in diabetic hepatocellular carcinoma
title_full_unstemmed Deficient DNASE1L3 facilitates neutrophil extracellular traps‐induced invasion via cyclic GMP‐AMP synthase and the non‐canonical NF‐κB pathway in diabetic hepatocellular carcinoma
title_short Deficient DNASE1L3 facilitates neutrophil extracellular traps‐induced invasion via cyclic GMP‐AMP synthase and the non‐canonical NF‐κB pathway in diabetic hepatocellular carcinoma
title_sort deficient dnase1l3 facilitates neutrophil extracellular traps‐induced invasion via cyclic gmp‐amp synthase and the non‐canonical nf‐κb pathway in diabetic hepatocellular carcinoma
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9021716/
https://www.ncbi.nlm.nih.gov/pubmed/35474906
http://dx.doi.org/10.1002/cti2.1386
work_keys_str_mv AT lina deficientdnase1l3facilitatesneutrophilextracellulartrapsinducedinvasionviacyclicgmpampsynthaseandthenoncanonicalnfkbpathwayindiabetichepatocellularcarcinoma
AT zhengxue deficientdnase1l3facilitatesneutrophilextracellulartrapsinducedinvasionviacyclicgmpampsynthaseandthenoncanonicalnfkbpathwayindiabetichepatocellularcarcinoma
AT chenmianrong deficientdnase1l3facilitatesneutrophilextracellulartrapsinducedinvasionviacyclicgmpampsynthaseandthenoncanonicalnfkbpathwayindiabetichepatocellularcarcinoma
AT huangli deficientdnase1l3facilitatesneutrophilextracellulartrapsinducedinvasionviacyclicgmpampsynthaseandthenoncanonicalnfkbpathwayindiabetichepatocellularcarcinoma
AT chenli deficientdnase1l3facilitatesneutrophilextracellulartrapsinducedinvasionviacyclicgmpampsynthaseandthenoncanonicalnfkbpathwayindiabetichepatocellularcarcinoma
AT huorui deficientdnase1l3facilitatesneutrophilextracellulartrapsinducedinvasionviacyclicgmpampsynthaseandthenoncanonicalnfkbpathwayindiabetichepatocellularcarcinoma
AT lixiaotong deficientdnase1l3facilitatesneutrophilextracellulartrapsinducedinvasionviacyclicgmpampsynthaseandthenoncanonicalnfkbpathwayindiabetichepatocellularcarcinoma
AT huangyucan deficientdnase1l3facilitatesneutrophilextracellulartrapsinducedinvasionviacyclicgmpampsynthaseandthenoncanonicalnfkbpathwayindiabetichepatocellularcarcinoma
AT sunmingwen deficientdnase1l3facilitatesneutrophilextracellulartrapsinducedinvasionviacyclicgmpampsynthaseandthenoncanonicalnfkbpathwayindiabetichepatocellularcarcinoma
AT maisuiqing deficientdnase1l3facilitatesneutrophilextracellulartrapsinducedinvasionviacyclicgmpampsynthaseandthenoncanonicalnfkbpathwayindiabetichepatocellularcarcinoma
AT wuzhuoyi deficientdnase1l3facilitatesneutrophilextracellulartrapsinducedinvasionviacyclicgmpampsynthaseandthenoncanonicalnfkbpathwayindiabetichepatocellularcarcinoma
AT zhanghui deficientdnase1l3facilitatesneutrophilextracellulartrapsinducedinvasionviacyclicgmpampsynthaseandthenoncanonicalnfkbpathwayindiabetichepatocellularcarcinoma
AT liujinbao deficientdnase1l3facilitatesneutrophilextracellulartrapsinducedinvasionviacyclicgmpampsynthaseandthenoncanonicalnfkbpathwayindiabetichepatocellularcarcinoma
AT yangchuntao deficientdnase1l3facilitatesneutrophilextracellulartrapsinducedinvasionviacyclicgmpampsynthaseandthenoncanonicalnfkbpathwayindiabetichepatocellularcarcinoma